首页> 外文期刊>Ultrasound in Medicine and Biology >ENHANCED THERAPEUTIC ANTI-INFLAMMATORY EFFECT OF BETAMETHASONE ON TOPICAL ADMINISTRATION WITH LOW-FREQUENCY, LOW-INTENSITY (20 KHZ, 100 MW/CM2) ULTRASOUND EXPOSURE ON CARRAGEENAN-INDUCED ARTHRITIS IN A MOUSE MODEL
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ENHANCED THERAPEUTIC ANTI-INFLAMMATORY EFFECT OF BETAMETHASONE ON TOPICAL ADMINISTRATION WITH LOW-FREQUENCY, LOW-INTENSITY (20 KHZ, 100 MW/CM2) ULTRASOUND EXPOSURE ON CARRAGEENAN-INDUCED ARTHRITIS IN A MOUSE MODEL

机译:在小鼠模型中诱导角叉菜胶诱导的关节炎的低频,低强度(20kHz,100mW / cm2)超声暴露在局部给药上增强βOnsone对局部给药的治疗抗炎作用

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The purpose of this work was to investigate whether low-frequency, low-intensity (20 kHz, <100 mW/cm(2), spatial-peak, temporal-peak intensity) ultrasound, delivered with a lightweight (<100 g), tether-free, fully wearable, battery-powered applicator, is capable of reducing inflammation in a mouse model of rheumatoid arthritis. The therapeutic, acute, anti-inflammatory effect was estimated from the relative swelling induced in mice hindlimb paws. In an independent, indirect approach, the inflammation was bio-imaged by measuring glycolytic activity with near-infrared labeled 2-deoxyglucose. The outcome of the experiments indicated that the combination of ultrasound exposure and topical application of 0.1% (w/w) betamethasone gel resulted in statistically significantly (rho < 0.05) enhanced anti-inflammatory activity in comparison with drug or ultrasound treatment alone. The present study underscores the potential benefits of low-frequency, low-intensity ultrasound-assisted drug delivery. However, the proof of concept presented indicates the need for additional experiments to systematically evaluate and optimize the potential of, and the conditions for, tolerable low-frequency, low-intensity ultrasound-promoted non-invasive drug delivery. (E-mail: crb68@drexel.edu) (C) 2015 World Federation for Ultrasound in Medicine & Biology.
机译:这项工作的目的是研究低频,低强度(20kHz,<100mW / cm(2),空间峰值,时间峰强度)超声,用轻质(<100g)输送,无系环形,可穿戴的电池供电的涂抹器,能够在类风湿性关节炎的小鼠模型中减少炎症。从小鼠Hindlimb爪子诱导的相对肿胀估计治疗性,急性抗炎作用。在独立的间接方法中,通过测量具有近红外标记的2-脱氧葡萄糖的糖酵母活性来生物成像。实验结果表明,超声暴露和局部施用0.1%(w / w)βOnsone凝胶的组合导致统计学上显着显着(Rho <0.05),与单独的药物或超声处理相比,增强的抗炎活性。本研究强调了低频,低强度超声辅助药物递送的潜在益处。然而,呈现的概念证明表明需要额外的实验,以系统地评估和优化潜在的潜力和可容许的低频,低强度超声促进的无侵入药物递送的潜力。 (电子邮件:CRB68@drexel.edu)(c)2015 2015年美国超声联联合会在医学与生物学中。

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